Mehdi Saher, Derkacheva Maria, Ramström Margareta, Kralemann Lejon, Bergquist Jonas, Hennig Lars
Department of Plant Biology, Uppsala BioCenter, Swedish University of Agricultural Sciences and Linnean Center for Plant Biology, SE-75007 Uppsala, Sweden.
Department of Plant Biology, Uppsala BioCenter, Swedish University of Agricultural Sciences and Linnean Center for Plant Biology, SE-75007 Uppsala, Sweden Department of Biology and Zurich-Basel Plant Science Center, ETH Zurich, CH-8092 Zurich, Switzerland.
Plant Cell. 2016 Jan;28(1):42-54. doi: 10.1105/tpc.15.00763. Epub 2015 Dec 24.
MSI1 belongs to a family of histone binding WD40-repeat proteins. Arabidopsis thaliana contains five genes encoding MSI1-like proteins, but their functions in diverse chromatin-associated complexes are poorly understood. Here, we show that MSI1 is part of a histone deacetylase complex. We copurified HISTONE DEACETYLASE19 (HDA19) with MSI1 and transcriptional regulatory SIN3-like proteins and provide evidence that MSI1 and HDA19 associate into the same complex in vivo. These data suggest that MSI1, HDA19, and HISTONE DEACETYLATION COMPLEX1 protein form a core complex that can integrate various SIN3-like proteins. We found that reduction of MSI1 or HDA19 causes upregulation of abscisic acid (ABA) receptor genes and hypersensitivity of ABA-responsive genes. The MSI1-HDA19 complex fine-tunes ABA signaling by binding to the chromatin of ABA receptor genes and by maintaining low levels of acetylation of histone H3 at lysine 9, thereby affecting the expression levels of ABA receptor genes. Reduced MSI1 or HDA19 levels led to increased tolerance to salt stress corresponding to the increased ABA sensitivity of gene expression. Together, our results reveal the presence of an MSI1-HDA19 complex that fine-tunes ABA signaling in Arabidopsis.
MSI1属于组蛋白结合WD40重复蛋白家族。拟南芥含有五个编码MSI1样蛋白的基因,但它们在不同染色质相关复合物中的功能尚不清楚。在这里,我们表明MSI1是组蛋白去乙酰化酶复合物的一部分。我们将组蛋白去乙酰化酶19(HDA19)与MSI1和转录调节SIN3样蛋白共纯化,并提供证据表明MSI1和HDA19在体内缔合形成同一复合物。这些数据表明,MSI1、HDA19和组蛋白去乙酰化复合物1蛋白形成一个核心复合物,该复合物可以整合各种SIN3样蛋白。我们发现,MSI1或HDA19的减少会导致脱落酸(ABA)受体基因上调以及ABA反应基因超敏。MSI1-HDA19复合物通过结合ABA受体基因的染色质并维持组蛋白H3赖氨酸9位点的低乙酰化水平来微调ABA信号传导,从而影响ABA受体基因的表达水平。MSI1或HDA19水平降低导致对盐胁迫的耐受性增加,这与基因表达对ABA敏感性增加相对应。总之,我们的结果揭示了一种在拟南芥中微调ABA信号传导的MSI1-HDA19复合物的存在。